IRMA-International.org: Creator of Knowledge
Information Resources Management Association
Advancing the Concepts & Practices of Information Resources Management in Modern Organizations

Chalcogenide-Based Nanocomposites for CO2 Transformation Into Valuable Chemicals and Clean Energy Generation

Chalcogenide-Based Nanocomposites for CO2 Transformation Into Valuable Chemicals and Clean Energy Generation
View Sample PDF
Author(s): Krishnamoorthy Gurushankar (Krishna Chaitanya Institute of Technology and Sciences, India)and Karthik Kannan (National Chung Cheng University, Taiwan & Karpagam Academy of Higher Education, India)
Copyright: 2026
Pages: 22
Source title: Chalcogenide-Based Materials for Optoelectronics, Energy, and Sustainability
Source Author(s)/Editor(s): Karthik Kannan (National Chung Cheng University, Taiwan & Karpagam Academy of Higher Education, India)and Vinaya Tari (Universitas Airlangga, Indonesia)
DOI: 10.4018/979-8-3373-3962-7.ch014

Purchase

View Chalcogenide-Based Nanocomposites for CO2 Transformation Into Valuable Chemicals and Clean Energy Generation on the publisher's website for pricing and purchasing information.

Abstract

Optimizing the interaction between the nanocomposites and CO2, researchers aim to develop sustainable methods for producing essential chemicals while simultaneously addressing environmental concerns related to carbon emissions. This innovative strategy not only contributes to resource recovery but also supports the transition towards a more sustainable energy. Therefore, in this chapter, we explore the concept of chalcogenide nanocomposites for CO2 transformation into valuable chemicals and clean energy generation. In addition, by addressing a significant gap in renewable energy research, this chapter offers comprehensive guidance for researchers working on the development of chalcogenide-based materials specifically designed for CO2 transformation into valuable chemicals and clean energy generation.

Related Content

R. N. Ravikumar, S. Aarthi. © 2026. 28 pages.
José G. Vargas-Hernández. © 2026. 24 pages.
José G. Vargas-Hernández. © 2026. 40 pages.
José G. Vargas-Hernández. © 2026. 26 pages.
M. R. Namitha, M. K. Shamin, P. P. Afthab Saeed. © 2026. 36 pages.
Harpreet Kaur Channi. © 2026. 34 pages.
Harpreet Kaur Channi. © 2026. 30 pages.
Body Bottom